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基于 TEAD4 螺旋发夹设计的 YAP 螺旋夹的计算设计和实验验证,可选择性捕获具有强抗肿瘤活性的 YAPα1-螺旋。

Computational design and experimental confirmation of a disulfide-stapled YAP helix-trap derived from TEAD4 helical hairpin to selectively capture YAP α1-helix with potent antitumor activity.

机构信息

School of Chemistry and Chemical Engineering, Jinggangshan University, No. 28, Xueyuan Road, Ji'an, 343009, China.

出版信息

J Comput Aided Mol Des. 2024 Aug 23;38(1):31. doi: 10.1007/s10822-024-00572-2.

DOI:10.1007/s10822-024-00572-2
PMID:39177727
Abstract

Human Hippo signaling pathway is an evolutionarily conserved regulator network that controls organ development and has been implicated in various cancers. Transcriptional enhanced associate domain-4 (TEAD4) is the final nuclear effector of Hippo pathway, which is activated by Yes-associated protein (YAP) through binding to two separated YAP regions of α1-helix and Ω-loop. Previous efforts have all been addressed on deriving peptide inhibitors from the YAP to target TEAD4. Instead, we herein attempted to rationally design a so-called 'YAP helix-trap' based on the TEAD4 to target YAP by using dynamics simulation and energetics analysis as well as experimental assays at molecular and cellular levels. The trap represents a native double-stranded helical hairpin covering a specific YAP-binding site on TEAD4 surface, which is expected to form a three-helix bundle with the α1-helical region of YAP, thus competitively disrupting TEAD4-YAP interaction. The hairpin was further stapled by a disulfide bridge across its two helical arms. Circular dichroism characterized that the stapling can effectively constrain the trap into a native-like structured conformation in free state, thus largely minimizing the entropy penalty upon its binding to YAP. Affinity assays revealed that the stapling can considerably improve the trap binding potency to YAP α1-helix by up to 8.5-fold at molecular level, which also exhibited a good tumor-suppressing effect at cellular level if fused with TAT cell permeation sequence. In this respect, it is considered that the YAP helix-trap-mediated blockade of Hippo pathway may be a new and promising therapeutic strategy against cancers.

摘要

人类 Hippo 信号通路是一个进化上保守的调控网络,控制着器官的发育,并与各种癌症有关。转录增强相关结构域 4(TEAD4)是 Hippo 通路的最终核效应物,通过与α1-螺旋和Ω环的两个分离的 YAP 区域结合,YAP 激活 TEAD4。以前的研究都集中在从 YAP 衍生出肽抑制剂来靶向 TEAD4。相反,我们在此尝试基于 TEAD4 通过动力学模拟和能量分析以及分子和细胞水平的实验检测,合理设计所谓的“YAP 螺旋陷阱”来靶向 YAP。该陷阱代表一个覆盖 TEAD4 表面特定 YAP 结合位点的天然双链螺旋发夹,预计与 YAP 的α1-螺旋区形成三螺旋束,从而竞争性破坏 TEAD4-YAP 相互作用。该发夹进一步通过其两个螺旋臂之间的二硫键进行钉合。圆二色性特征表明,在自由状态下,订书钉可以有效地将陷阱约束成类似天然的结构构象,从而在与 YAP 结合时大大降低熵罚。亲和测定表明,订书钉可以在分子水平上使陷阱与 YAP α1-螺旋的结合效力提高多达 8.5 倍,如果与 TAT 细胞渗透序列融合,则在细胞水平上表现出良好的肿瘤抑制作用。在这方面,认为 YAP 螺旋陷阱介导的 Hippo 通路阻断可能是一种针对癌症的新的有前途的治疗策略。

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Computational design and experimental confirmation of a disulfide-stapled YAP helix-trap derived from TEAD4 helical hairpin to selectively capture YAP α1-helix with potent antitumor activity.基于 TEAD4 螺旋发夹设计的 YAP 螺旋夹的计算设计和实验验证,可选择性捕获具有强抗肿瘤活性的 YAPα1-螺旋。
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本文引用的文献

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Machine annealing-guided navigation of antihypertensive food peptide selectivity between human ACE N- and C-domains in structurally interacting diversity space.机器退火引导的降压肽在结构相互作用多样性空间中与人 ACE N 端和 C 端之间的选择性导航。
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Systematic analysis and comparison of peptide specificity and selectivity between their cognate receptors and noncognate decoys.
肽与其同源受体和非同源诱饵之间肽特异性和选择性的系统分析与比较。
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PepQSAR: a comprehensive data source and information platform for peptide quantitative structure-activity relationships.PepQSAR:一个用于肽定量构效关系的综合数据源和信息平台。
Amino Acids. 2023 Feb;55(2):235-242. doi: 10.1007/s00726-022-03219-4. Epub 2022 Dec 6.
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Targeting peptide-mediated interactions in omics.组学中靶向肽介导的相互作用
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Molecular design and rational optimization of synergistic effect between the two wings of a roughly orthogonal cation-π-π stacking system at nasopharyngeal carcinoma YAP1-TEAD4 parallel Helix-Helix interaction interface.分子设计与鼻咽癌 YAP1-TEAD4 平行螺旋-螺旋相互作用界面两叶间协同效应的合理优化:一个大致正交的阳离子-π-π 堆积体系
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7
Advances of targeting the YAP/TAZ-TEAD complex in the hippo pathway for the treatment of cancers.靶向河马通路中YAP/TAZ-TEAD复合物治疗癌症的研究进展
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Integrated unsupervised-supervised modeling and prediction of protein-peptide affinities at structural level.在结构水平上对蛋白质-肽亲和力进行集成无监督-监督建模和预测。
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Systematic profiling and identification of the peptide-mediated interactions between human Yes-associated protein and its partners in esophageal cancer.系统分析和鉴定人 Yes 相关蛋白与其在食管癌中相互作用的伙伴之间的肽介导相互作用。
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